首页> 外文期刊>Journal of Plant Research >Gravity-controlled asymmetrical transport of auxin regulates a gravitropic response in the early growth stage of etiolated pea (Pisum sativum) epicotyls: studies using simulated microgravity conditions on a three-dimensional clinostat and using an agravitropic mutant, ageotropum
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Gravity-controlled asymmetrical transport of auxin regulates a gravitropic response in the early growth stage of etiolated pea (Pisum sativum) epicotyls: studies using simulated microgravity conditions on a three-dimensional clinostat and using an agravitropic mutant, ageotropum

机译:重力控制的生长素的不对称运输在黄化豌豆(Pisum sativum)上胚轴的早期生长过程中调节着重力反应:在三维斜度仪上使用模拟微重力条件,并使用了一种重力引力的变体ageotropum

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摘要

Increased expression of the auxin-inducible gene PsIAA4/5 was observed in the elongated side of epicotyls in early growth stages of etiolated pea (Pisum sativum L. cv. Alaska) seedlings grown in a horizontal or an inclined position under 1 g conditions. Under simulated microgravity conditions on a 3D clinostat, accumulation of PsIAA4/5 mRNA was found throughout epicotyls showing automorphosis. Polar auxin transport in the proximal side of epicotyls changed when the seedlings were grown in a horizontal or an inclined position under 1 g conditions, but that under clinorotation did not, regardless of the direction of seed setting. Accumulation of PsPIN1 and PsPIN2 mRNAs in epicotyls was affected by gravistimulation, but not by clinorotation. Under 1 g conditions, auxin-transport inhibitors made epicotyls of seedlings grown in a horizontal or inclined position grow toward the proximal direction to cotyledons. These inhibitors led to epicotyl bending toward the cotyledons in seedlings grown in an inclined position under clinorotation. Polar auxin transport, as well as growth direction, of epicotyls of the agravitropic mutant ageotropum did not respond to various gravistimulation. These results suggest that alteration of polar auxin transport in the proximal side of epicotyls regulates the graviresponse of pea epicotyls.
机译:在1 g条件下以水平或倾斜位置生长的黄化豌豆(Pisum sativum L. cv。Alaska)幼苗的早期生长阶段,在表胚轴的延长侧观察到了生长素诱导型基因PsIAA4 / 5的表达增加。在3D倾斜仪上的模拟微重力条件下,发现整个表皮中的PsIAA4 / 5 mRNA积累,显示出自身形态。当在1 g条件下水平或倾斜种植幼苗时,上胚轴近端的极性生长素转运发生了变化,但无论种子结实的方向如何,在垂直旋转下幼苗均没有生长。上胚轴中PsPIN1和PsPIN2 mRNA的积累受去刺激作用的影响,但不受旋转运动的影响。在1 g条件下,生长素运输抑制剂使水平或倾斜位置生长的幼苗的上胚轴朝着子叶的近端方向生长。这些抑制剂导致在倾斜旋转下生长在倾斜位置的幼苗中的胚轴向子叶弯曲。引力突变体阿戈托菌的上胚轴的极性植物生长素转运以及生长方向对各种重力刺激均无反应。这些结果表明,上胚轴近端极性生长素转运的改变调节了豌豆上胚轴的重力反应。

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